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McKibben, Jason D.; Murphy, Timothy H. – Journal of Agricultural Education, 2021
Researchers have reported that participation in agricultural education reinforces STEM concepts, often through project-based learning. The use of projects is common in agricultural education. However, the instructional importance of certain elements of these projects is not well understood. We conducted a quasi-experimental study to examine the…
Descriptors: Authentic Learning, Active Learning, Student Projects, STEM Education
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Dew, Matthew; Perry, Jonathan; Ford, Lewis; Bassichis, William; Erukhimova, Tatiana – Physical Review Physics Education Research, 2021
Studies examining gender differences in introductory physics show a consensus when it comes to a gender gap on conceptual assessments; however, the story is not as clear when it comes to differences in gendered performance on exams. This study examined whether gendered differences exist on midterm and final exams in introductory physics courses…
Descriptors: Gender Differences, Introductory Courses, Land Grant Universities, Physics
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Stephens, S.; Marder, M. – Physical Review Physics Education Research, 2019
The education of physicists requires annual progress in mathematics through grades K-12, continuing on to high school physics, undergraduate instruction, and often many years of postgraduate study. The traditional domain of physics education research is the study of pedagogical techniques for a single lesson or a single course, but the physics and…
Descriptors: Longitudinal Studies, Mechanics (Physics), Scientific Concepts, Regression (Statistics)
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King, Andrew C.; Hidrovo, Carlos H. – Advances in Engineering Education, 2015
Laboratory-based instruction is a powerful educational tool that engages students in Science, Technology, Engineering and Mathematics (STEM) disciplines beyond textbook theory. This is true in mechanical engineering education and is often used to provide collegiate-level students a hands-on alternative to course theory. Module-based laboratory…
Descriptors: Engineering, Engineering Education, Mechanics (Physics), Laboratory Experiments
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Davis, Freddie J.; Lockwood-Cooke, Pamela; Hunt, Emily M. – American Journal of Engineering Education, 2011
Over the last few years, WTAMU Mathematics, Engineering and Science faculty has used interdisciplinary projects as the basis for implementation of a linked-class approach to Problem-Based Learning (PBL). A project that has significant relevance to engineering statics, fluid mechanics, and calculus is the Hydrostatic Pressure Project. This project…
Descriptors: Engineering Education, Undergraduate Students, Problem Based Learning, Interdisciplinary Approach
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Barroso, Luciana R.; Morgan, James R. – Advances in Engineering Education, 2012
This paper describes the creation and evolution of an undergraduate dynamics and vibrations course for civil engineering students. Incorporating vibrations into the course allows students to see and study "real" civil engineering applications of the course content. This connection of academic principles to real life situations is in…
Descriptors: Civil Engineering, Undergraduate Study, Program Development, Undergraduate Students
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Linsey, Julie; Talley, Austin; White, Christina; Jensen, Dan; Wood, Kristin – Advances in Engineering Education, 2009
Active learning enhances engineering education. This paper presents rationale, curriculum supplements, and an approach to active learning that may be seamlessly incorporated into a traditional lecture-based engineering class. A framework of educational theory that structures the active learning experiences and includes consideration of learning…
Descriptors: Engineering Education, Active Learning, Mechanics (Physics), Educational Innovation
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Bryan, Joel – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2004
National science and mathematics standards stress the importance of integrating technology use into those fields of study at all levels of education. In order to fulfill these directives, it is necessary to introduce both in-service and preservice teachers to various forms of technology while modeling its appropriate use in investigating…
Descriptors: Computer Software, Video Technology, Mechanics (Physics), Energy
Texas State Technical Inst., Sweetwater. – 1984
This curriculum guide consists of materials for use in teaching a four-part course in electromechanical technical technology. The first part contains nine units dealing with hydraulics and nine units on pneumatics. Addressed in the individual units are the following topics: an introduction to hydraulics; control of hydraulic energy; check valves…
Descriptors: Behavioral Objectives, Competency Based Education, Criterion Referenced Tests, Electric Motors